Literature DB >> 34057658

PHLPP1/Nrf2-Mdm2 axis induces renal apoptosis via influencing nucleo-cytoplasmic shuttling of FoxO1 during diabetic nephropathy.

Alpana Mathur1, Vivek Kumar Pandey1,2, Mohammad Fareed Khan1,2, Poonam Kakkar3,4.   

Abstract

Impaired PI3K/Akt signaling (insulin resistance) and poor glycemic control (hyperglycemia) are the major risk factors involved in the progression of diabetic nephropathy (DN). This study was designed to identify factors influencing cell survival during DN. We found that high glucose exposure in renal proximal tubular cells (NRK52E) upregulated PHLPP1, an Akt phosphatase (Ser473), causing suppression in Akt and IGF1β phosphorylation leading to inhibition in insulin signaling pathway. Results demonstrate that sustained activation of PHLPP1 promoted nuclear retention of FoxO1 by preventing its ubiquitination via Mdm2, an Akt/ Nrf2-dependent E3 ligase. Thus, enhanced FoxO1 nuclear stability caused aberration in renal gluconeogenesis and activated apoptotic cascade. Conversely, gene silencing of PHLPP1-enhanced Nrf2 expression and attenuated FoxO1 regulated apoptosis compared to hyperglycemic cells. Mechanistic aspects of PHLPP1-Nrf2/FoxO1 signaling were further validated in STZ-nicotinamide-induced type 2 diabetic Wistar rats. Importantly, we observed via immunoblotting and dual immunocytochemical studies that treatment of Morin (2',3,4',5,7-Pentahydroxyflavone) during diabetes significantly augmented FoxO1 nuclear exclusion, resulting in its ubiquitination via Akt-Nrf2/Mdm2 pathway. Furthermore, lowering of PHLPP1 expression by Morin also prevented FoxO1/Mst1-mediated apoptotic signaling in vitro and in vivo. Morin treatment under the experimental conditions, effectively decreased blood glucose levels, ameliorated insulin resistance, alleviated oxidative stress and attenuated renal apoptosis in diabetic rats comparable to metformin thereby exhibiting tremendous potential against renal complications of diabetes. These novel results further acclaim that inhibition of PHLPP1/FoxO1-Mdm2 axis is critical in the pathogenesis of diabetic nephropathy.

Entities:  

Keywords:  Apoptosis; Cell signaling; Diabetic nephropathy; FoxO1; Nrf2

Year:  2021        PMID: 34057658     DOI: 10.1007/s11010-021-04177-3

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  31 in total

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Review 2.  Hypertension in diabetic nephropathy: epidemiology, mechanisms, and management.

Authors:  Peter N Van Buren; Robert Toto
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3.  Increased levels of the Akt-specific phosphatase PH domain leucine-rich repeat protein phosphatase (PHLPP)-1 in obese participants are associated with insulin resistance.

Authors:  F Andreozzi; C Procopio; A Greco; G C Mannino; C Miele; G A Raciti; C Iadicicco; F Beguinot; A E Pontiroli; M L Hribal; F Folli; G Sesti
Journal:  Diabetologia       Date:  2011-04-01       Impact factor: 10.122

Review 4.  PHLPPing through history: a decade in the life of PHLPP phosphatases.

Authors:  Agnieszka T Grzechnik; Alexandra C Newton
Journal:  Biochem Soc Trans       Date:  2016-12-15       Impact factor: 5.407

Review 5.  AKT/PKB Signaling: Navigating the Network.

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Journal:  J Biol Chem       Date:  2009-03-25       Impact factor: 5.157

Review 7.  The role of the kidneys in glucose homeostasis in type 2 diabetes: clinical implications and therapeutic significance through sodium glucose co-transporter 2 inhibitors.

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Journal:  Metabolism       Date:  2014-07-02       Impact factor: 8.694

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Authors:  Zhaoyun Zhang; Chong Wee Liew; Diane E Handy; Yingyi Zhang; Jane A Leopold; Ji Hu; Lili Guo; Rohit N Kulkarni; Joseph Loscalzo; Robert C Stanton
Journal:  FASEB J       Date:  2009-12-23       Impact factor: 5.191

Review 9.  Mitochondrial dysfunction and insulin resistance: an update.

Authors:  Magdalene K Montgomery; Nigel Turner
Journal:  Endocr Connect       Date:  2014-11-10       Impact factor: 3.335

Review 10.  Cellular death, reactive oxygen species (ROS) and diabetic complications.

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Journal:  Cell Death Dis       Date:  2018-01-25       Impact factor: 8.469

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Review 1.  Molecular Mechanistic Pathways Targeted by Natural Compounds in the Prevention and Treatment of Diabetic Kidney Disease.

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Journal:  Molecules       Date:  2022-09-21       Impact factor: 4.927

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